8V +1 www 4 ΚΩ ww 1 mA Is 3 ΚΩ + 2 ΚΩ 3000i₁V w 1 ΚΩ V₁ 0.5VV +
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Please use MESH CURRENT Method in finding Vs, I4, and Is. Give clear and proper step by step solution.
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- RC time constants 6750 4.32ΚΩ 10ΚΩ 4.7nF J 5V 5V S1 630ΚΩ 370kΩ 6V J 2MQ 5V V₂ S2 Vc 1uF Va Vd Vb +3 33002 Red 33002 S1 is closed and S2 is moved to the bottom contact at t = 0. At t=0 is the red light on? Is the green light on? At approximately what time will the green LED change turn on or turn off? At approximately what time will the red LED change turn on or turn off? Green 14 14Which ane oli the functions given below is a solton of the UL dy 2y dx None of These In y + 2 In x =c x²+c X+C 2+5V VDO EN Xtal 8ה 7 +5V Freq1 HGND | GND х Mhz Sensor0 crystal Freq26 5 Vss Out 04 PRE Xtal 1k Output HA7210IP 4 CLK CLR SN74HC7491 GND 0.01 μ GND +5V 4 +5V +5V +5V OE O/P3 0. 1µF | 47µF GND SG351P |2 x MHz GND GND Consider the Quartz Crystal Microbalance Sensor shown above, with crystal resonant frequency, x = 3.3 Mhz. You are given the following values: Active crystal area = 1.6 cm², and the change in frequency = - 10 Hz Calculate the change in mass, Am in nano gram, up to 2 decimal places. Answer:
- OUTPUT VOLTAGE (V) 2.0 1.8 1.6 1.0 0.8 0.6 0.2 0 <-50 a. TMP35 b. TMP36 c. TMP37 +Vs = 3V -25 0 50 25 TEMPERATURE (°C) 75 Figure 6. Output Voltage vs. Temperature 100 b 125 00337-007 Using the appropriate curve, develop a linear equation for the output temperature as a function of voltage.Inductive Circuits Fill in all the missing values. Refer to the following formulas: XL=2fLL=XL2ff=XL2L Inductance (H) Frequency (Hz) Inductive Reactance ( ) 1.2 60 0.085 213.628 1000 4712.389 0.65 600 3.6 678.584 25 411.459 0.5 60 0.85 6408.849 20 201.062 0.45 400 4.8 2412.743 1000 40.841ISMA 3K un 3K un + Vs 7mH 3√1₂ Im mn SmH -+ 20 V t IMF Vc What is Vs. iz Ve at steady-state?
- Solve the problem in Image the fast ASAP the chapter electromagnetic fields thank uS1-The waveforms in the figure are applied to D-type FF. Accordingly, draw the shape of the signal received from the Q output according to the following time intervals. (It may be helpful for you to take a time slot for each frame interval in your notebook. Draw the time intervals by showing the number of each interval as below) Set='0' CLK D. Q D type CLK- FF Reset='1' i1i213i 415 i 6i71819 1011121314151611718119120 21122i45.8) Figure below if R1 100k2, VBB=30V and n = 0.6 ; what is the frequency of the gering pulses when C = 10µF ? Repeat for C1= 1µF, 0.1µF, and 0.01µF. %3D 100K R1 RB2 VBB C1 RBI
- Find the 500K Rsh voltagea look Rang Rsh IG IAVO IG IAVE 0.03 7 70 525 500 600 350 3 7 70 700 262 To Imx Rm Rsh: I rang-Im 300 x31550 500-300 Ash 525 300x350 bo0 -300 Rsh = 350e %3D = 300X350 = 262n F00 - 300Identify which measurement this oscilloscope time difference reading is useful for. Oscilloscope-XSC1 Channel_B Channel_A 169.064 V 113.590 V -55.474 V Time T1 Reverse 250.000 us 89.282 V 122.375 V 33.093 V T2 382.576 us T2-T1 132.576 us Save Ext. trigger Timebase Scale: 200 us/Div X pos. (Div): 0 Channel A Scale: 100 V/Div Y pos. (Div): 0 Channel B Trigger Scale: 100 V/Div Y pos. (Div): 0 Edge: f 2 AB Ext Level: Y/T Add B/A A/B AC0 DC AC0 DC Single Normal Auto None O none of the above O phase shift O periodConvert the circuit from a T to a pi configuration